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Crowd‐Driven Pattern Formation: Computational Strategies for Large‐Scale Design and Assembly
Digital fabrication has its limits where large‐scale operations are concerned. Computers may offer enormous advantages in terms of speed and precision, but they cannot match humans' capacity for complex contextual decision‐making. Massachusetts‐based designer Marcelo Coelho, and research scientist Tovi Grossman of Autodesk Research in Toronto, present three major recent installations that explore how to make the most of both.
Crowd‐Driven Pattern Formation: Computational Strategies for Large‐Scale Design and Assembly
Digital fabrication has its limits where large‐scale operations are concerned. Computers may offer enormous advantages in terms of speed and precision, but they cannot match humans' capacity for complex contextual decision‐making. Massachusetts‐based designer Marcelo Coelho, and research scientist Tovi Grossman of Autodesk Research in Toronto, present three major recent installations that explore how to make the most of both.
Crowd‐Driven Pattern Formation: Computational Strategies for Large‐Scale Design and Assembly
Coelho, Marcelo (author) / Grossman, Tovi (author)
Architectural Design ; 87 ; 50-59
2017-07-01
10 pages
Article (Journal)
Electronic Resource
English
Toyota , The Divine Proportion , Rio de Janeiro , Arirang Mass Games , 2014 FIFA World Cup , Autodesk University, Las Vegas , UR‐10 robotic arms , Beyond Vision , Leonardo da Vinci , This is not a Ball , Autodesk , North Korea , Vik Muniz , Juan Rendón , Hive , Jeremy Hunter , G‐code , Pyongyang , Luca Pacioli , Rio 2016 Paralympics Opening Ceremony
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